Claims
- 1. An apparatus for controlling operation of a disc drive for optical media with a pitted premastered area that cannot be overwritten and a grooved user-writeable area that can be overwritten, comprising:
means for determining the position of an actuator arm in relation to the grooved and pitted areas when tracking is active.
- 2. The apparatus, as set forth in claim 1, further comprising means for entering a physical sector address (PSA) idle state where no attempts to read PSAs are made when tracking or focus are not active.
- 3. The apparatus, as set forth in claim 2, further comprising means for transitioning from the PSA idle state to a PSA enable state when tracking becomes active
- 4. The apparatus, as set forth in claim 1, further comprising means for entering a PSA locked state where PSAs can be read when both focus and tracking are active
- 5. The apparatus, as set forth in claim 1, further comprising means for disabling acquisition interrupts and flags to indicate that PSAs are not being read.
- 6. The apparatus, as set forth in claim 1, further comprising means for enabling PSA acquisition.
- 7. The apparatus, as set forth in claim 6, further comprising means for reading the PSAs.
- 8. The apparatus, as set forth in claim 1, further comprising means for re-attempting to acquire a PSA when the PSA cannot be read within a predetermined time period.
- 9. The apparatus, as set forth in claim 1, wherein re-attempting to acquire the PSA comprises toggling between control system settings appropriate for pits and settings appropriate for grooves.
- 10. The apparatus, as set forth in claim 1, further comprising means for monitoring the most recently read PSA when in a PSA locked state; and means for re-attempting to acquire a new PSA if a new PSA is not read before a timeout period expires.
- 11. The apparatus, as set forth in claim 1, further comprising means for predicting the current PSA and determining if the actuator arm is close to the last track on the optical media.
- 12. The apparatus, as set forth in claim 1, further comprising means for reading a PSA; and means for determining if the actuator arm is within a predetermined distance to the last track on the optical media.
- 13. The apparatus, as set forth in claim 1, further comprising means for moving the actuator arm away from the last track on the optical media if the actuator arm is within a predetermined distance to the last track on the optical media.
- 14. A method for controlling operation of a disc drive for optical media with a pitted premastered area that cannot be overwritten and a grooved user-writeable area that can be overwritten, comprising:
determining the position of an actuator arm in relation to the grooved and pitted areas when tracking is active.
- 15. The method, as set forth in claim 14, further comprising entering a physical sector address (PSA) idle state where no attempts to read PSAs are made when tracking or focus are not active.
- 16. The method, as set forth in claim 15, further comprising transitioning from the PSA idle state to a PSA enable state when tracking becomes active
- 17. The method, as set forth in claim 14, further comprising entering a PSA locked state where PSAs can be read when both focus and tracking are active
- 18. The method, as set forth in claim 14, further comprising disabling acquisition interrupts and flags to indicate that PSAs are not being read.
- 19. The method, as set forth in claim 14, further comprising enabling PSA acquisition.
- 20. The method, as set forth in claim 19, further comprising reading the PSAs.
- 21. The method, as set forth in claim 14, further comprising re-attempting to acquire a PSA when the PSA cannot be read within a predetermined time period.
- 22. The method, as set forth in claim 14, wherein re-attempting to acquire the PSA comprises toggling between control system settings appropriate for pits and settings appropriate for grooves.
- 23. The method, as set forth in claim 14, further comprising monitoring the most recently read PSA when in a PSA locked state; and re-attempting to acquire a new PSA if a new PSA is not read before a timeout period expires.
- 24. The method, as set forth in claim 14, further comprising predicting the current PSA and determining if the actuator arm is close to the last track on the optical media.
- 25. The method, as set forth in claim 14, further comprising reading a PSA; and determining if the actuator arm is within a predetermined distance to the last track on the optical media.
- 26. The method, as set forth in claim 14, further comprising moving the actuator arm away from the last track on the optical media if the actuator arm is within a predetermined distance to the last track on the optical media.
- 27. A computer program product comprising:
instructions to implement the method of claim 14.
- 28. A data signal comprising:
instructions to implement the method of claim 14.
- 29. A system for controlling operation of a disc drive for optical media with a pitted premastered area that cannot be overwritten and a grooved user-writeable area that can be overwritten, comprising:
instructions operable to determine the position of an actuator arm in relation to the grooved and pitted areas.
- 30. The system, as set forth in claim 29, further comprising instructions operable to enter a physical sector address (PSA) idle state where no attempts to read PSAs are made when tracking or focus are not active.
- 31. The system, as set forth in claim 30, further comprising instructions operable to transition from the PSA idle state to a PSA enable state when tracking becomes active
- 32. The system, as set forth in claim 29, further comprising instructions operable to enter a PSA locked state where PSAs can be read when both focus and tracking are active
- 33. The system, as set forth in claim 29, further comprising instructions operable to disable acquisition interrupts and flags to indicate that PSAs are not being read.
- 34. The system, as set forth in claim 29, further comprising instructions operable to enable PSA acquisition.
- 35. The system, as set forth in claim 34, further comprising instructions operable to read the PSAs.
- 36. The system, as set forth in claim 29, further comprising instructions operable to re-attempt to acquire a PSA when the PSA cannot be read within a predetermined time period.
- 37. The system, as set forth in claim 29, wherein the instructions operable to re-attempt to acquire the PSA comprise instructions further operable to toggle between control system settings appropriate for pits and settings appropriate for grooves.
- 38. The system, as set forth in claim 29, further comprising instructions operable to monitor the most recently read PSA when in a PSA locked state; and instructions operable to re-attempt to acquire a new PSA if a new PSA is not read before a timeout period expires.
- 39. The system, as set forth in claim 29, further comprising instructions operable to predict the current PSA and determine if the actuator arm is close to the last track on the optical media.
- 40. The system, as set forth in claim 29, further comprising instructions operable to read a PSA; and instructions operable to determine if the actuator arm is within a predetermined distance to the last track on the optical media.
- 41. The system, as set forth in claim 29, further comprising instructions operable to move the actuator arm away from the last track on the optical media if the actuator arm is within a predetermined distance to the last track on the optical media.
Cross-Reference To Co-filed Applications
[0001] The present disclosure was co-filed with the following sets of disclosures: the “Tracking and Focus Servo System” disclosures, the “Servo System Calibration” disclosures, the “Spin Motor Servo System” disclosures, and the “System Architecture” disclosures; each of which was filed on the same date and assigned to the same assignee as the present disclosure, and are incorporated by reference herein in their entirety. The Tracking and Focus Servo System disclosures include U.S. Disclosure Ser. Nos. {Attorney Docket Numbers M-11095 US, M-12077 US, M-12078 US, M-12079 US, M-12080 US, M-12081 US, M-12082 US, M-12083 US, M-12084 US, M-12085 US, M-12086 US, M-12087 US, M-12088 US, M-12089 US, M-12090 US, M-12091 US, M-12092 US, M-12093 US, M-12104 US, M-12105 US, M-12106 US, M-12107 US, M-12108 US, M-12111 US, M-12112 US, and M-12195 US.} The Servo System Calibration disclosures include U.S. Disclosure Ser. Nos. {Attorney Docket Numbers M-11097 US, M-12094 US, M-12095 US, M-12096 US, M-12097 US, M-12098 US, M-12099 US, M-12100 US, M-12101 US, M-12102 US, M-12103 US, M-12109 US, M-12110 US and M-12155 US.} The Spin Motor Servo System disclosures include U.S. Disclosure Serial Nos. {Attorney Docket Numbers M-12117 US, M-12118 US, M-12119 US, M-11096 US, M-12121 US, M-12122 US, and M-12147 US.} The System Architecture disclosures include U.S. Disclosure Ser. Nos. {Attorney Docket Numbers M-11098 US, M-12120 US, M-12023 US, M-12024 US, M-12025 US, M-12026 US, M-12027 US, M-12028 US, M-12029 US, M-12030 US, M-12031 US, M-12032 US, and M-12177 US.}
[0002] The present disclosure was also co-filed with the following disclosures U.S. patent Disclosure Ser. Nos. ______ , and ______ {Attorney Docket Numbers M-9115, and M-12076 US, respectively}, each of which was filed on the same date and assigned to the same assignee as the present disclosure, and are incorporated by reference herein in their entirety.
Provisional Applications (1)
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Number |
Date |
Country |
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60264351 |
Jan 2001 |
US |